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Entanglement in the Ground State of an Isotropic Three-Qubit Transverse XY Chain with Energy Current 总被引:1,自引:0,他引:1 下载免费PDF全文
The ground state entanglement in an isotropic three-qubit transverse XY chain with energy current is analysed. A quantum phase transition from a no-energy-current phase to energy-current phase is found when the magnetic field changes. It has also been found that the ground state changes in company with the quantum phase transition. 相似文献
54.
Ground-state entanglement in a three-spin transverse Ising model with energy current 总被引:2,自引:0,他引:2 下载免费PDF全文
The ground-state entanglement associated with a three-spin
transverse Ising model is studied. By introducing an energy
current into the system, a quantum phase transition to
energy-current phase may be presented with the variation of
external magnetic field; and the ground-state entanglement
varies suddenly at the critical point of quantum phase
transition. In our model, the introduction of energy current
makes the entanglement between any two qubits become maximally
robust. 相似文献
55.
与多光束干涉的理论推导不同,本文基于无源腔的Q值定义,根据能量守恒原理,对连续波腔衰荡技术测量原理进行了新的推导.根据推导结果,采用数值模拟的方式就入射光开、关时间对腔出射光功率变化线形的影响进行了分析.重点对衰荡腔充光不足情况下的衰荡线形进行了仿真和数据拟合.结果表明,衰荡腔充光不足会给测量带来误差,但进一步缩短入射光关断时间能减小这种误差. 相似文献
56.
We have observed strong scattering of a probe light by dilute Bose-Einstein condensate (BEC) ^87Rb gas in a tight magnetic trap. The scattering light forms fringes at the image plane. It is found that we can infer the real size of the condensation and the number of the atoms by modelling the imaging system. We present a quantitative calculation of light scattering by the condensed atoms. The calculation shows that the experimental results agree well with the prediction of the generalized diffraction theory, and thus we can directly observe the phase transition of BEC in a tight trap. 相似文献
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The available electron cyclotron resonance plasma sources have been simulated in two-dimensional configuration space (Z, R) and three-dimensional velocity space (Vz, Vr, Vθ). Using a hybrid model, we treat ions as particles and electrons as fluid. The simulation is specified for plasma parameters of the available apparatus and is focused on the ion flux distributions. For a set of given operating conditions, the spatial distributions of electron temperature, plasma potential, plasma density, ionization rate and the contours map of distributions of particles in different volume cells in velocity space are obtained; statistics on ions that hit the bottom surface are also reported. The distributions of ion flux vectors on different cross-section planes in the plasma are given, and the phenomena of large radial diffusione of ions across magnetic force lines are also demonstrated. Finally, the influences of microwave power and neutral gas pressure on the distributions of ion flux vectors on ZR-plane, ion flux radial distributions and ion currents to all walls have been studied. 相似文献